Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/100753
PIRA download icon_1.1View/Download Full Text
Title: Determining inter-system bias of GNSS signals with narrowly spaced frequencies for GNSS positioning
Authors: Tian, Y 
Liu, Z 
Ge, M
Neitzel, F
Issue Date: Aug-2018
Source: Journal of geodesy, Aug. 2018, v. 92, no. 8, p. 873-887
Abstract: Relative positioning using multi-GNSS (global navigation satellite systems) can improve accuracy, reliability, and availability compared to the use of a single constellation system. Intra-system double-difference (DD) ambiguities (ISDDAs) refer to the DD ambiguities between satellites of a single constellation system and can be fixed to an integer to derive the precise fixed solution. Inter-system ambiguities, which denote the DD ambiguities between different constellation systems, can also be fixed to integers on overlapping frequencies, once the inter-system bias (ISB) is removed. Compared with fixing ISDDAs, fixing both integer intra- and inter-system DD ambiguities (IIDDAs) means an increase of positioning precision through an integration of multiple GNSS constellations. Previously, researchers have studied IIDDA fixing with systems of the same frequencies, but not with systems of different frequencies. Integer IIDDAs can be determined from single-difference (SD) ambiguities, even if the frequencies of multi-GNSS signals used in the positioning are different. In this study, we investigated IIDDA fixing for multi-GNSS signals of narrowly spaced frequencies. First, the inter-system DD models of multi-GNSS signals of different frequencies are introduced, and the strategy for compensating for ISB is presented. The ISB is decomposed into three parts: 1) a float approximate ISB number that can be considered equal to the ISB of code pseudorange observations and thus can be estimated through single point positioning (SPP); 2) a number that is a multiple of the GNSS signal wavelength; and 3) a fractional ISB part, with a magnitude smaller than a single wavelength. Then, the relationship between intra- and inter-system DD ambiguity RATIO values and ISB was investigated by integrating GPS L1 and GLONASS L1 signals. In our numerical analyses with short baselines, the ISB parameter and IIDDA were successfully fixed, even if the number of observed satellites in each system was small.
Keywords: Inter-system bias
Inter-system DD ambiguity fixing
Intra-system DD ambiguity fixing
Multi-GNSS integration
Narrowly spaced frequencies
Publisher: Springer
Journal: Journal of geodesy 
ISSN: 0949-7714
EISSN: 1432-1394
DOI: 10.1007/s00190-017-1100-4
Rights: © Springer-Verlag GmbH Germany, part of Springer Nature 2017
This version of the article has been accepted for publication, after peer review (when applicable) and is subject to Springer Nature’s AM terms of use(https://www.springernature.com/gp/open-research/policies/accepted-manuscript-terms), but is not the Version of Record and does not reflect post-acceptance improvements, or any corrections. The Version of Record is available online at: http://dx.doi.org/10.1007/s00190-017-1100-4.
Appears in Collections:Journal/Magazine Article

Files in This Item:
File Description SizeFormat 
Liu_Determining_Inter-System_Bias.pdfPre-Published version1.59 MBAdobe PDFView/Open
Open Access Information
Status open access
File Version Final Accepted Manuscript
Access
View full-text via PolyU eLinks SFX Query
Show full item record

Page views

77
Citations as of Apr 14, 2025

Downloads

47
Citations as of Apr 14, 2025

SCOPUSTM   
Citations

15
Citations as of Nov 28, 2024

WEB OF SCIENCETM
Citations

11
Citations as of Oct 10, 2024

Google ScholarTM

Check

Altmetric


Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.